人类组成型雄甾烷受体通过抑制促红细胞生成素信号传导抑制肝癌发展和肝癌细胞增殖。

Zhihui Li, So Mee Kwon, Daochuan Li, Linhao Li, Xiwei Peng, Junran Zhang, Tatsuya Sueyoshi, Jean-Pierre Raufman, Masahiko Negishi, Xin Wei Wang, Hongbing Wang
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摘要

组成型雄烷受体(CAR)是一种核受体,通过调节众多靶基因的转录,在调节异生物代谢和解毒、能量平衡和细胞增殖方面发挥着至关重要的作用。CAR 激活已被确定为苯巴比妥类非致癌物质促进啮齿类动物肝脏肿瘤形成的作用模式。然而,这种模式似乎与人类 CAR(hCAR)在肝细胞癌(HCC)中的功能无关,人们对这种功能的了解仍然很少。在这里,我们发现 hCAR 在 HCC 中的表达明显低于邻近的非肿瘤组织,重要的是,hCAR 表达的降低与 HCC 预后的恶化有关。我们还发现,在人肝癌细胞(HepG2 和 Hep3B)中过表达 hCAR 能有效抑制细胞增殖、细胞周期进展、软凝胶集落形成以及裸鼠异种移植的生长。RNA-Seq 分析表明,hCAR 能显著抑制肝癌细胞中促红细胞生成素(EPO)(一种多向生长因子)的表达。在 HepG2 细胞中加入重组 EPO 可以部分缓解 hCAR 对细胞活力的抑制。从机理上讲,我们发现过表达 hCAR 可通过信号转导和激活转录 3、AKT 和细胞外信号调节激酶 1/2 的去磷酸化抑制有丝分裂原 EPO-EPO 受体信号转导。此外,我们还发现 hCAR 通过抑制肝细胞核因子 4α 的表达和活性来下调 EPO 的表达,而肝细胞核因子 4α 是调节 EPO 表达的关键转录因子。总之,我们的研究结果表明,hCAR 在 HCC 的发展过程中起着抑制肿瘤的作用,这一点与啮齿类动物的 CAR 不同,并为我们深入了解 hCAR-肝细胞核因子 4 alpha-EPO 轴在人类肝脏肿瘤发生过程中的作用提供了依据。
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Human constitutive androstane receptor represses liver cancer development and hepatoma cell proliferation by inhibiting erythropoietin signaling.

The constitutive androstane receptor (CAR) is a nuclear receptor that plays a crucial role in regulating xenobiotic metabolism and detoxification, energy homeostasis, and cell proliferation by modulating the transcription of numerous target genes. CAR activation has been established as the mode of action by which phenobarbital-like nongenotoxic carcinogens promote liver tumor formation in rodents. This paradigm, however, appears to be unrelated to the function of human CAR (hCAR) in hepatocellular carcinoma (HCC), which remains poorly understood. Here, we show that hCAR expression is significantly lower in HCC than that in adjacent nontumor tissues and, importantly, reduced hCAR expression is associated with a worse HCC prognosis. We also show overexpression of hCAR in human hepatoma cells (HepG2 and Hep3B) profoundly suppressed cell proliferation, cell cycle progression, soft-agar colony formation, and the growth of xenografts in nude mice. RNA-Seq analysis revealed that the expression of erythropoietin (EPO), a pleiotropic growth factor, was markedly repressed by hCAR in hepatoma cells. Addition of recombinant EPO in HepG2 cells partially rescued hCAR-suppressed cell viability. Mechanistically, we showed that overexpressing hCAR repressed mitogenic EPO-EPO receptor signaling through dephosphorylation of signal transducer and activator of transcription 3, AKT, and extracellular signal-regulated kinase 1/2. Furthermore, we found that hCAR downregulates EPO expression by repressing the expression and activity of hepatocyte nuclear factor 4 alpha, a key transcription factor regulating EPO expression. Collectively, our results suggest that hCAR plays a tumor suppressive role in HCC development, which differs from that of rodent CAR and offers insight into the hCAR-hepatocyte nuclear factor 4 alpha-EPO axis in human liver tumorigenesis.

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